Very high energy particle acceleration powered by the jets of the microquasar SS 433
HAWC Collaboration: A.U. Abeysekara, A. Albert, R. Alfaro, C. Alvarez,, J.D. \'Alvarez, R. Arceo, J.C. Arteaga-Vel\'azquez, D. Avila Rojas, H.A., Ayala Solares, E. Belmont-Moreno, S.Y. BenZvi, C. Brisbois, K.S., Caballero-Mora, T. Capistr\'an, A. Carrami\~nana, S. Casanova

TL;DR
This paper reports the detection of very high energy gamma rays from the SS 433/W50 system, showing that electrons are accelerated to hundreds of TeV in the lobes, far from the central jets.
Contribution
First spatially resolved TeV gamma-ray observations of the SS 433/W50 system, demonstrating electron acceleration to hundreds of TeV in the lobes.
Findings
TeV gamma-ray emission localized in the lobes of W50
Electrons accelerated to at least hundreds of TeV
Emission consistent with a single electron population in a magnetic field
Abstract
SS 433 is a binary system containing a supergiant star that is overflowing its Roche lobe with matter accreting onto a compact object (either a black hole or neutron star). Two jets of ionized matter with a bulk velocity of extend from the binary, perpendicular to the line of sight, and terminate inside W50, a supernova remnant that is being distorted by the jets. SS 433 differs from other microquasars in that the accretion is believed to be super-Eddington, and the luminosity of the system is erg s. The lobes of W50 in which the jets terminate, about 40 pc from the central source, are expected to accelerate charged particles, and indeed radio and X-ray emission consistent with electron synchrotron emission in a magnetic field have been observed. At higher energies (>100 GeV), the particle fluxes of rays from X-ray hotspots around SS 433 have…
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